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Detection of alkali metal ions in DNA crystals using state-of-the-art X-ray diffraction experiments

机译:碱金属离子的检测 使用最新的X射线衍射实验分析DNA晶体

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摘要

The observation of light metal ions in nucleic acids crystals is generally a fortuitous event. Sodium ions in particular are notoriously difficult to detect because their X-ray scattering contributions are virtually identical to those of water and Na+…O distances are only slightly shorter than strong hydrogen bonds between well-ordered water molecules. We demonstrate here that replacement of Na+ by K+, Rb+ or Cs+ and precise measurements of anomalous differences in intensities provide a particularly sensitive method for detecting alkali metal ion-binding sites in nucleic acid crystals. Not only can alkali metal ions be readily located in such structures, but the presence of Rb+ or Cs+ also allows structure determination by the single wavelength anomalous diffraction technique. Besides allowing identification of high occupancy binding sites, the combination of high resolution and anomalous diffraction data established here can also pinpoint binding sites that feature only partial occupancy. Conversely, high resolution of the data alone does not necessarily allow differentiation between water and partially ordered metal ions, as demonstrated with the crystal structure of a DNA duplex determined to a resolution of 0.6 Å.
机译:观察核酸晶体中的轻金属离子通常是偶然的事件。众所周知,钠离子尤其难以检测,因为它们的X射线散射贡献实际上与水相同,并且Na +…O的距离仅比规则排列的水分子之间的强氢键短。我们在这里证明了用K +,Rb +或Cs +替代Na +以及精确测量强度异常差异提供了一种检测核酸晶体中碱金属离子结合位点的特别灵敏的方法。不仅碱金属离子很容易位于这种结构中,而且Rb +或Cs +的存在还允许通过单波长异常衍射技术确定结构。除了允许识别高占用的结合位点外,此处建立的高分辨率和异常衍射数据的结合还可以查明仅具有部分占用的结合位点。相反,单独的高分辨率数据并不一定能区分水和部分有序的金属离子,正如DNA双链体的晶体结构确定为0.6的分辨率所证明的那样。

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